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首页> 外文期刊>The Journal of Chemical Physics >Ionic liquid ultrathin films at the surface of Cu(100) and Au(111)
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Ionic liquid ultrathin films at the surface of Cu(100) and Au(111)

机译:Cu(100)和Au(111)表面的离子液体超薄膜

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Monolayer to multilayer ultrathin films of the ionic liquid (IL) 1-methyl-3-octylimidazolium bis(trifluoromethylsulfonyl) amide have been prepared on Au(111) and Cu(100) surfaces using physical vapor deposition. The ion-surface interactions are studied using a combination of scanning tunnel microscopy, as well as ultraviolet and x-ray photoemission spectroscopies. It is found that the IL does not decompose at the surface of the metals, and that the IL interaction with the Cu(100) surface is much stronger than with the Au(111) surface. As a consequence, STM imaging at room temperature results in more stable imaging at the monolayer coverage on Cu(100) than on Au(111), and work function measurements indicate a large interface dipole upon deposition of a monolayer of IL on Cu. Additional IL depositions on the two surfaces result in two distinct behaviors for the IL core levels: a gradual energy shift of the core levels on Au and a set of two well defined monolayer and multilayer core level components found at fixed energies on Cu, due to the formation of a tightly bound monolayer. Finally, it is proposed that the particularly strong cation-Cu interaction leads to stabilization of the anion and prevents its decomposition at the surface of Cu(100). Published by AIP Publishing.
机译:使用物理气相沉积在Au(111)和Cu(100)表面上制备离子液体(IL)1-甲基-3-辛基咪唑鎓双(三氟甲基磺酰基)酰胺的单层超薄薄膜。使用扫描隧道显微镜的组合以及紫外线和X射线照相光谱研究离子表面相互作用。结果发现,IL在金属表面不分解,并且与Cu(100)表面的IL相互作用比与Au(111)表面强大得多。因此,在室温下的STM成像导致在Cu(100)上的单层覆盖上的成像比Au(111)更稳定,并且功函数测量在沉积Cu上的单层IL时表示大界面偶极子。两个表面上的额外IL沉积导致IL核心水平的两个不同的行为:AU上的核心水平的逐渐电能和一组两个明确定义的单层和多层核心水平组件,在CU上的固定能量上发现形成紧密结合的单层。最后,提出了特别强阳离子-Cu系的相互作用导致所述阴离子和防止其分解的稳定在铜(100)的表面上。通过AIP发布发布。

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